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Route selection for QoS over Mobile IP.

机译:用于基于移动IP的QoS的路由选择。

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Influenced by the availability of powerful portable computers, and the expansion of Internet-based services, consumers demand mobile Internet. This implies supporting user mobility while sustaining network connectivity which in turn requires more sophisticated routing methods than simple static Internet protocol. Routing optimization is critical for the efficiency of mobile Internet as it directly impacts resource utilization in the network. On the other hand, while connected to the Internet, users want to enjoy real-time services. Granting quality of service for real-time multimedia applications is one of the major concerns for Internet Service Providers.;In the mobile Internet context, as a result of a signalling conflict, providing quality of service declines in presence of routing optimisation. This conflict must be resolved to achieve efficient resource utilization in the networks and provide quality of service for real-time Internet-based services.;This thesis presents a solution for resolving the aforementioned conflict. Initially a set of requirements are established for a new solution. The fundamental idea is developed based on exercising routing optimization according to quality of service requirements and network conditions. A new protocol architecture for Mobile IP (MIP) is built based on a cross-layer design technique. This design implies that a new data flow collects the necessary parameters in the network. This data is passed to a new entity in the network layer of the MIP protocol stack that inter-connects IP, routing, mobility and resource reservation protocols.;Based on network conditions and the quality of service requirements the optimal path is selected over which the resources are reserved for the duration of the connection. The new solution named MIP with Routing Optimization and QoS (MIP-ROQS) removes the signalling conflict and furthermore, results in increased network performance. Simulation of this solution demonstrates reduction in application end-to-end delay and delay variation, improved core network by reducing the amount of control traffic and dropped traffic and improved access network by reducing its delay.;Moreover, we integrate Multi Protocol Label Switching (MPLS) architecture and MIP-ROQS to take advantage of MPLS labelling mechanism to label the optimal path selected by MIP-ROQS for the duration of a session. This integration makes IP-in-IP tunnelling in data forwarding redundant. MPLS is used to switch packets and label the optimal path over which the resources are reserved. Using this approach, the transmission delay, and packet processing overhead are further reduced.
机译:受功能强大的便携式计算机的可用性以及基于Internet的服务的扩展的影响,消费者需要移动Internet。这意味着在维持网络连接性的同时支持用户移动性,与简单的静态Internet协议相比,这反过来需要更复杂的路由方法。路由优化对于移动互联网的效率至关重要,因为它直接影响网络中的资源利用率。另一方面,在连接到Internet的同时,用户希望享受实时服务。授予实时多媒体应用程序服务质量是Internet服务提供商的主要关注之一。在移动Internet环境中,由于信号冲突,在存在路由优化的情况下,服务质量会下降。必须解决此冲突,以在网络中实现有效的资源利用并为基于Internet的实时服务提供服务质量。;本文提出了一种解决上述冲突的解决方案。最初,针对新解决方案建立了一组要求。该基本思想是根据服务质量要求和网络条件对路由进行优化后提出的。基于跨层设计技术,构建了用于移动IP(MIP)的新协议体系结构。这种设计意味着新的数据流将收集网络中的必要参数。此数据将传递到MIP协议栈的网络层中的一个新实体,该实体将IP,路由,移动性和资源保留协议互连起来;根据网络条件和服务质量要求,选择最佳路径在连接期间保留资源。具有路由优化和QoS(MIP-ROQS)的名为MIP的新解决方案消除了信令冲突,并且进一步提高了网络性能。此解决方案的仿真演示了减少应用程序端到端延迟和延迟变化,通过减少控制流量和丢弃流量来改善核心网络以及通过减少延迟来改善接入网络。此外,我们还集成了多协议标签交换( MPLS)体系结构和MIP-ROQS,以利用MPLS标记机制标记会话期间MIP-ROQS选择的最佳路径。这种集成使数据转发中的IP-in-IP隧道变得多余。 MPLS用于交换数据包并标记保留资源的最佳路径。使用这种方法,可以进一步减少传输延迟和数据包处理开销。

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